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Hydroecogeochemical effects of an epikarst ecosystem: case study of the Nongla Landiantang Spring catchment

机译:表层岩溶生态系统的水生态化学效应:以翁拉兰甸塘春季流域为例

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摘要

A typical small-scale epikarst ecosystem usually consists of an epikarst zone, soil and vegetation. In this study, to determine the hydro-eco-geochemical effects of an epikarst ecosystem in subtropical humid area, the samples of vegetation, soil, soil microbes, rainfall, throughfall, stem flow, soil water and epikarst springs of Nongla Village, Mashan County, Guangxi in China were collected and analyzed. The research results have shown in the epikarst ecosystem, the conductivity, temporary hardness and total carbon increased continuously in hydro-ecochemical cycle; the vegetation-soil system conducted the transformation and transference of carbon in hydro-ecochemical cycle; the vegetation layer was the major source for organic carbon, while the soil layer was of the important chemical field for the conversion of organic/inorganic carbon and HCO_3~-, which would affect the epikarst dynamical system; for most ions, the vegetation layer and shallow soil layer presented more leaching effect than absorption, in contrast, the deep soil layer behaved oppositely. The vegetation layer and shallow soil layer leached ions, and deep soil layer absorbed them. With the plant community presenting in a positive succession, the epikarst ecosystem trended to be stabilized gradually, which made the hydro-eco-geochemical effects to be adjusted and controlled more effectively.
机译:典型的小型表层岩溶生态系统通常由表层岩溶带,土壤和植被组成。为了确定亚热带湿润地区表层岩溶生态系统的水生态地球化学效应,对马山县弄拉村的植被,土壤,土壤微生物,降雨,贯通流,茎流,土壤水和表层岩溶泉进行了采样。收集并分析了中国广西。研究结果表明,在表层岩溶生态系统中,水-电化学循环中电导率,暂态硬度和总碳不断增加。植被-土壤系统在水生态化学循环中进行了碳的转化和转移。植被层是有机碳的主要来源,而土壤层是有机/无机碳和HCO_3〜-转化的重要化学领域,会影响表层岩溶动力系统。对于大多数离子而言,植被层和浅层土壤的浸出作用大于吸收作用,而深层土壤的吸收作用相反。植被层和浅层土壤浸出离子,深层土壤吸收离子。随着植物群落的积极演替,表岩溶生态系统趋向于逐渐稳定,这使得水生态地球化学效应得到更有效的调控。

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